Overview:
At PNNL, our core capabilities are divided among major departments that we refer to as Directorates within the Lab, focused on a specific area of scientific research or other function, with its own leadership team and dedicated budget.
Our Science & Technology directorates include National Security, Earth and Biological Sciences, Physical and Computational Sciences, and Energy and Environment. In addition, we have an Environmental Molecular Sciences Laboratory, a Department of Energy, Office of Science user facility housed on the PNNL campus.
The National Security Directorate (NSD) drives science-based, mission-focused solutions to take on complex, real-world threats to our nation and the world.
The AI and Data Analytics Division, part of the National Security Directorate, combines profound domain expertise and creative integration of advanced hardware and software to deliver computational solutions that address complex data and analytic challenges. Working in multidisciplinary teams, we connect foundational research to engineering to operations, providing the tools to innovate quickly and field results faster. Our strengths are integrated across the data analytics lifecycle, from data acquisition and management to analysis and decision support.
Rockstar Rewards:
Employees and their families are offered medical insurance, dental insurance, vision insurance, robust telehealth care options, several mental health benefits, free wellness coaching, health savings account, flexible spending accounts, basic life insurance, disability insurance, employee assistance program, business travel insurance, tuition assistance, relocation, backup childcare, legal benefits, supplemental parental bonding leave, surrogacy and adoption assistance, and fertility support. Employees are automatically enrolled in our company-funded pension plan and may enroll in our 401 (k) savings plan with company match*. Employees may accrue up to 120 vacation hours per year and may receive ten paid holidays per year.
Research Associates excluded.
All benefits are dependent upon eligibility.
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Responsibilities:
SOLVING THE HARDEST PROBLEMS IN NATIONAL SECURITY
Protecting U.S. residents and visitors requires sophisticated technological solutions to counter increasingly complex, AI-enabled threats. As adversaries deploy autonomous systems, coordinate multi-domain operations, and leverage advanced AI capabilities, our capabilities must evolve to match this complexity. The PNNL national security mission employs our expert engineering talent--self-driven innovators who thrive in ambiguity--to architect and deliver next-generation AI systems, multi-intelligence fusion platforms, and large-scale analytics capabilities that form the backbone of our nation's security infrastructure.
THE CHALLENGE IS REAL. THE PROBLEMS ARE HARD. THE IMPACT IS IMMEDIATE
You'll tackle problems that don't exist elsewhere from detecting and preventing smuggling of drugs and contraband to correlating petabytes of multi-modal intelligence data to solve National Security Problems. Every system you architect, every algorithm you optimize, and every deployment you lead directly strengthens our nation's security posture. This work demands relentless drive--the kind of engineer who sees obstacles as puzzles to solve and treats mission success as personal responsibility.
PNNL is leading the charge in advanced AI engineering, driving innovation in areas such as real-time multi-intelligence processing, petabyte-scale data orchestration, and agentic AI system architectures to support national security initiatives. We are looking for a mid-career Software Engineer to play a key role in advancing these groundbreaking technologies. In this position, you will leverage your experience in scalable system design, AI/ML engineering, and data architecture to develop revolutionary capabilities for processing multi-modal intelligence data with unprecedented speed and scale. You'll work in a fast-paced, mission-driven environment that combines startup-style agility with the rigor required for high-impact national security applications.
APPLYING YOUR ENGINEERING EXPERTISE TO CHALLENGES IMPACTING NATIONAL SECURITY
As a Software Engineer on PNNL's Software Engineering and Architectures (SEA) team, you will architect and lead the development of mission-critical AI systems, design systems at scale in support of mission objectives, and drive technical strategy for some of the nation's most sophisticated intelligence and security applications. You'll take ownership from concept to deployment, mentor and develop staff, collaborate with research scientists and domain experts, and translate cutting-edge research into production-ready systems deployed in highly secure environments--all while maintaining the entrepreneurial mindset that turns breakthrough research into operational reality.
HANDS-ON IMPACT ACROSS DIVERSE, HIGH-STAKES CHALLENGESSystem Architecture - Design and build distributed platforms in state-of-the-art secure facilities, architect high-availability microservices, conduct performance testing on enterprise-scale systems
Field Deployment - Deploy and optimize software systems in operational environments, troubleshoot mission-critical applications in real-world conditions, collaborate directly with system operators and infrastructure teams
Performance Engineering - Build ultra-high-performance APIs that handle millions of requests per second, architect systems that operate under extreme performance constraints, solve scalability challenges at national scale
Real-Time Systems - Build platforms that process streaming data with sub-millisecond latency, architect fault-tolerant systems that achieve 99.99% uptime, optimize performance for mission-critical operations
What You'll Architect & Build:Software Platforms - Develop scalable microservices architectures that coordinate across multiple domains, build robust API gateways for classified environments, architect service mesh implementations that handle the nation's most sensitive traffic
High-Performance Processing Systems - Lead distributed system design processing data from hundreds of sources simultaneously, architect real-time streaming platforms that handle terabytes per hour, design event-driven architectures that scale horizontally across data centers
Mission-Critical Infrastructure - Develop container orchestration platforms that span multiple security domains, architect CI/CD pipelines processing millions of deployments, build monitoring and observability systems across secure enclaves
Technical Leadership with Impact - Mentor engineering teams building systems that push the boundaries of software architecture, drive technical decisions that influence platform strategy, lead cross-functional initiatives spanning multiple development teams
Technical Expertise Expected:Programming Excellence - Advanced Python, C#/.Net, with proficiency in JavaScript/TypeScript, [Java, C/C++, Rust]
Cloud & Infrastructure - AWS/Azure architecture, Kubernetes orchestration, Infrastructure as Code, [GCP, Multi-cloud, Edge computing]
Data & Storage - S3, Elasticsearch/OpenSearch, PostgreSQL, MongoDB, Redshift, Delta Lake, Vector stores
AI/ML Engineering - Agentic AI systems, LLMs, model deployment & orchestration, MLOps platforms, distributed training, model serving at scale, vector databases, graph analytics
Intelligence Systems - Data fusion, GEOINT processing, signals analysis, threat correlation
Data Engineering - Spark/Databricks, Kafka/streaming, data lake/mesh architectures, real-time analytics, distributed computing
Specialized Systems - Geospatial processing frameworks, time-series databases, distributed computing, secure enclaves
Leadership Tools - Agile/SAFe methodologies, GitLab Enterprise, advanced CI/CD, security-first DevOps
National Interest Project Examples:Detect and prevent smuggling of drugs and contraband at ports of entry [Link]
Develop large data pipelines to thwart funding for terrorists, nuclear proliferators, drug cartels, and rogue leaders [Link]
Applying big data solutions to national security problems [Link]
Applying image classification for nuclear forensics analysis [Link]
Develop capabilities for scalable geospatial analytics [Link]
Use remotely sensed imagery to identify and monitor the progression of wildfires [Link]
Analyze the resiliency of the electric power grid to prevent large-scale outages [Link]
Optimize building efficiency using IOT and ICS data with automated demand-response markets [Link]
Model climate change and impacts to civilization [Link]
Hunt for the existence of dark matter to understand the nature of the universe [Link]
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